Abstract:
An approach for supervision of an audio path within an audio system that conserves power while operating in battery mode by temporarily turning off pre-determined audio components of the audio system when not performing supervision tasks and no audio is present on the audio path.
Abstract:
Systems, methods, and computer-readable media are presented herein for providing lower level physical-layer gateway functionalities and upper-level application functionalities; a system designed with flexible configurations in order to support a wide range of connected applications. The system includes a processor that executes machine instructions to perform operations. The operations comprise: receiving sensor data from a sensor device located in a building; converting the sensor data from a raw state to a physical measurement; and activating an abatement device situated in the building as a function of the physical measurement.
Abstract:
A security control apparatus, system and method are provided. The security control apparatus includes a wireless communication element that supports a plurality of wireless communication protocols. The wireless communication element is configured to provide wireless communications with a user interface device and at least one premise-based device. A remote communication element is configured to provide remote communications with a monitoring center. A processor is in communication with the local wireless communication element and the remote communication element. The processor is configured to use the wireless communication element to communicate with the user interface device to receive local control and configuration data. The processor is also configured to use the remote communication element to communicate data associated with at least one of a life safety feature and life style feature with the monitoring center.
Abstract:
A device interface and method for using the interface is provided. The device interface includes a packaging configured to be removably installed within a housing of a premises alarm device. An input component is housed within the packaging in which the input component is configured to detect an alarm annunciation from the alarm device and generate input data based on the detected alarm annunciation. A processor is housed within the packaging. The processor is configured to analyze the input data, generate event data indicative of an alarm event in which the event data is based on the analysis of the input data and cause transmission of at least a portion of the event data. A power component is also housed within the packaging in which the power component is configured to provide power to the device interface and to the alarm device.
Abstract:
A method includes receiving, at a node located in a structure, an indication of an evacuation condition. The structure includes a plurality of nodes in communication with one another. The method also includes sending, by the node, a message to one or more additional nodes. The message informs the one or more additional nodes that the node is going to determine an evacuation route in response to the indication of the evacuation condition such that the one or more additional nodes do not determine the evacuation route. The method also includes determining, by the node, the evacuation route based at least in part on the indication of the evacuation condition and at least in part on a layout of the structure. The method further includes providing, by the node, the evacuation route to the one or more additional nodes.
Abstract:
Systems, apparatuses and methods for detecting internal cell faults using online and real-time sensing techniques, and providing an accurate and reliable early warning for the incoming failure of battery cells hours or days prior to failure. A system is configured to perform real-time and direct measurement of battery cell parameters of temperature, voltage, and AC impedance through online sensing. These parameters may be simultaneously processed using advanced probabilistic and/or fuzzy logic-based algorithms to provide an early warning for the incoming failure of battery cells in a battery pack. This technology may safeguard the LIB battery packs while allowing them to operate at or near 100% capacity in both transportation and stationary applications.
Abstract:
Described herein are assemblies configured to be constructed atop of highway, freeway, or road barriers or guiderails. Methods of constructing the assemblies are also described.
Abstract:
A positioning locator mobile communication apparatus securely attached to a person or a subject to be monitored, wherein said apparatus utilizes two internal batteries to provide power to the mobile communication device electronic circuitry, and a detachable battery is used to charge the internal batteries. Wherein when the first internal battery is being charged by the detachable battery, the mobile communication device is operative by the second internal battery power. And when the second internal battery is being charged by the detachable battery, the mobile communication device becomes operative by the first internal battery power. The positioning locator mobile communication apparatus may utilize the first internal battery, to provide power to the mobile communication apparatus certain components electronic circuitry, and the apparatus may contain a second rechargeable or non-rechargeable internal battery designed to provide power to the mobile communication apparatus at least one other electronic circuitry.
Abstract:
According to the present invention, a light guidance system for adapted illumination in emergency or power cut situations is provided, wherein the light guidance system is connected to an auxiliary power supply system (101) and comprises at least one light unit (103) adapted to emit light for illuminating surroundings and a control unit adapted to increase a light level of the light unit (103) according to a presence signal indicating the presence of a person, wherein the increasing of the light level is adjusted to enable a mandatory lighting period and a mandatory light level by considering a power value of the auxiliary power supply system (101).
Abstract:
A service window optimized system alert engine is disclosed for automated generation and delivery of alerts relating to detected conditions of a monitored system. The service window optimized system alert engine comprises a state monitor, a system configuration and history module, an alert generator, and an alert router. The state monitor is configured to send status data of the monitored system to the alert generator. The system configuration and history module provides information to the alert generator specifying an alert generation policy established for the monitored system. The alert generator is configured to process the status data from the state monitor in accordance with the alert generation policy specified by the system configuration and history module to generate at least one alert. The alert router is configured to determine optimal delivery characteristics for the generated alert and to deliver the alert in accordance with the optimal delivery characteristics.